A numerical investigation of horizontal viscous gravity currents
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Publication:5187679
DOI10.1017/S0022112009006454zbMath1181.76054MaRDI QIDQ5187679
Jacques Magnaudet, Yannick Hallez
Publication date: 26 February 2010
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Experimental work for problems pertaining to fluid mechanics (76-05) Finite volume methods applied to problems in fluid mechanics (76M12) Stratification effects in viscous fluids (76D50)
Related Items (10)
Tail structure and bed friction velocity distribution of gravity currents propagating over an array of obstacles ⋮ A two-layer model for buoyant displacement flows in a channel with wall slip ⋮ Dynamic interaction of gravity currents in a confined porous layer ⋮ The influence of capillary effects on the drainage of a viscous gravity current into a deep porous medium ⋮ Buoyant displacement flows in slightly non-uniform channels ⋮ Buoyant miscible displacement flows in rectangular channels ⋮ Lock-exchange gravity currents with a high volume of release propagating over a periodic array of obstacles ⋮ Viscous lock-exchange in rectangular channels ⋮ A numerical investigation of high-Reynolds-number constant-volume non-Boussinesq density currents in deep ambient ⋮ Influence of heterogeneity on second-kind self-similar solutions for viscous gravity currents
Cites Work
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- Effect of Schmidt number on the structure and propagation of density currents
- Mixing and dissipation in particle-driven gravity currents
- The effect of confining boundaries on viscous gravity currents
- Wall effects in non-Boussinesq density currents
- Self-similar viscous gravity currents: phase-plane formalism
- Analysis and direct numerical simulation of the flow at a gravity-current head. Part 1. Flow topology and front speed for slip and no-slip boundaries
- Transient buoyancy-driven front dynamics in nearly horizontal tubes
- Effects of channel geometry on buoyancy-driven mixing
- On the front velocity of gravity currents
- High-resolution simulations of particle-driven gravity currents
- Gravity currents and related phenomena
- The front condition for gravity currents
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